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Plasmonic nearfield scanning probe with high transmission

机译:等离子高场近场扫描探头

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Nearfield scanning optical microscopy (NSOM) offers a practical means of optical imaging, optical sensing, and nanolithography at a resolution below the diffraction limit of the light. However, its applications are limited due to the strong attenuation of the light transmitted through the subwavelength aperture. To solve this problem, we report the development of plasmonic nearfield scanning optical microscope with an efficient nearfield focusing. By exciting surface plasmons, plasmonic NSOM probes are capable of confining light into a 100 nm spot. We show by nearfield lithography experiments that the intensity at the near field is at least one order stronger than the intensity obtained from the conventional NSOM probes under the same illumination condition. Such a high efficiency can enable plasmonic NSOM as a practical tool for nearfield lithography, data storage, cellular visualization, and many other applications requiring efficient transmission with high resolution.
机译:近场扫描光学显微镜(NSOM)提供了一种光学成像,光学传感和纳米光刻的实用方法,其分辨率低于光的衍射极限。然而,由于通过亚波长孔传输的光的强烈衰减,其应用受到限制。为了解决这个问题,我们报道了具有有效近场聚焦的等离子体近场扫描光学显微镜的发展。通过激发表面等离激元,等离激元NSOM探针能够将光限制在100 nm点内。我们通过近场光刻实验表明,在相同的照明条件下,近场的强度比从常规NSOM探针获得的强度至少强一个数量级。如此高的效率可使等离子NSOM成为用于近场光刻,数据存储,细胞可视化以及许多其他需要高分辨率高效传输的应用的实用工具。

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